Missouri City, TX, United States of America

Chun Wang


Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 13(Granted Patents)


Company Filing History:


Years Active: 1995

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1 patent (USPTO):Explore Patents

Title: Inventor Spotlight: Chun Wang - Innovating Low Friction Applications

Introduction

Chun Wang is a talented inventor based in Missouri City, Texas, who has made significant contributions to the field of polymeric compositions. With a focus on creating innovative solutions for low friction applications, her work exemplifies the spirit of modern invention.

Latest Patents

Chun Wang holds a patent for a self-lubricating composition that combines polybenzimidazole and graphite. This unique polymeric composition contains internal lubricants, specifically designed to enhance performance in low friction applications. The formulation consists of approximately 65 to 85 weight percent polymeric blend, with polybenzimidazole making up about 35 to 100 weight percent of the blend, and boron nitride and graphite serving as essential lubricants. This inventive composition proves particularly useful for manufacturing shaped articles such as bearings, bearing sleeves, and rings.

Career Highlights

Wang is affiliated with Hoechst Celanese Corporation, where she applies her expertise in materials science to develop cutting-edge products. Her innovative approach and dedication to research contribute significantly to the company's advancements in the industry.

Collaborations

Throughout her career, Chun Wang has collaborated with esteemed colleagues, including Todd E. Andres and Eduardo Alvarez. These partnerships have fostered a dynamic environment for creativity and innovation, allowing for the exchange of ideas that propel their work to new heights.

Conclusion

Chun Wang's contributions to the field of polymeric compositions and low friction applications are noteworthy. Her patent exemplifies her commitment to innovation and showcases her ability to devise practical solutions for real-world challenges. As she continues to push the boundaries of material science, the impact of her work is sure to resonate within the industry for years to come.

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